xref: /freebsd/sys/x86/xen/pv.c (revision ca49b3342d1ebad74cb313023c97500fd5409ddc)
11a9cdd37SRoger Pau Monné /*
21a9cdd37SRoger Pau Monné  * Copyright (c) 2004 Christian Limpach.
31a9cdd37SRoger Pau Monné  * Copyright (c) 2004-2006,2008 Kip Macy
49b4e54d3SRoger Pau Monné  * Copyright (c) 2008 The NetBSD Foundation, Inc.
51a9cdd37SRoger Pau Monné  * Copyright (c) 2013 Roger Pau Monné <roger.pau@citrix.com>
61a9cdd37SRoger Pau Monné  * All rights reserved.
71a9cdd37SRoger Pau Monné  *
81a9cdd37SRoger Pau Monné  * Redistribution and use in source and binary forms, with or without
91a9cdd37SRoger Pau Monné  * modification, are permitted provided that the following conditions
101a9cdd37SRoger Pau Monné  * are met:
111a9cdd37SRoger Pau Monné  * 1. Redistributions of source code must retain the above copyright
121a9cdd37SRoger Pau Monné  *    notice, this list of conditions and the following disclaimer.
131a9cdd37SRoger Pau Monné  * 2. Redistributions in binary form must reproduce the above copyright
141a9cdd37SRoger Pau Monné  *    notice, this list of conditions and the following disclaimer in the
151a9cdd37SRoger Pau Monné  *    documentation and/or other materials provided with the distribution.
161a9cdd37SRoger Pau Monné  *
171a9cdd37SRoger Pau Monné  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS AS IS'' AND
181a9cdd37SRoger Pau Monné  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
191a9cdd37SRoger Pau Monné  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
201a9cdd37SRoger Pau Monné  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
211a9cdd37SRoger Pau Monné  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
221a9cdd37SRoger Pau Monné  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
231a9cdd37SRoger Pau Monné  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
241a9cdd37SRoger Pau Monné  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
251a9cdd37SRoger Pau Monné  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
261a9cdd37SRoger Pau Monné  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
271a9cdd37SRoger Pau Monné  * SUCH DAMAGE.
281a9cdd37SRoger Pau Monné  */
291a9cdd37SRoger Pau Monné 
301a9cdd37SRoger Pau Monné #include <sys/cdefs.h>
311a9cdd37SRoger Pau Monné __FBSDID("$FreeBSD$");
321a9cdd37SRoger Pau Monné 
33c98a2727SRoger Pau Monné #include "opt_ddb.h"
34c98a2727SRoger Pau Monné 
351a9cdd37SRoger Pau Monné #include <sys/param.h>
361a9cdd37SRoger Pau Monné #include <sys/bus.h>
371a9cdd37SRoger Pau Monné #include <sys/kernel.h>
381a9cdd37SRoger Pau Monné #include <sys/reboot.h>
391a9cdd37SRoger Pau Monné #include <sys/systm.h>
40079f7ef8SRoger Pau Monné #include <sys/malloc.h>
41c98a2727SRoger Pau Monné #include <sys/linker.h>
421a9cdd37SRoger Pau Monné #include <sys/lock.h>
431a9cdd37SRoger Pau Monné #include <sys/rwlock.h>
44aa389b4fSRoger Pau Monné #include <sys/boot.h>
4597baeefdSRoger Pau Monné #include <sys/ctype.h>
46079f7ef8SRoger Pau Monné #include <sys/mutex.h>
47079f7ef8SRoger Pau Monné #include <sys/smp.h>
481a9cdd37SRoger Pau Monné 
491a9cdd37SRoger Pau Monné #include <vm/vm.h>
501a9cdd37SRoger Pau Monné #include <vm/vm_extern.h>
511a9cdd37SRoger Pau Monné #include <vm/vm_kern.h>
521a9cdd37SRoger Pau Monné #include <vm/vm_page.h>
531a9cdd37SRoger Pau Monné #include <vm/vm_map.h>
541a9cdd37SRoger Pau Monné #include <vm/vm_object.h>
551a9cdd37SRoger Pau Monné #include <vm/vm_pager.h>
561a9cdd37SRoger Pau Monné #include <vm/vm_param.h>
571a9cdd37SRoger Pau Monné 
58fae92773SJohn Baldwin #include <machine/intr_machdep.h>
59fae92773SJohn Baldwin #include <x86/apicvar.h>
6097baeefdSRoger Pau Monné #include <x86/init.h>
611e69553eSRoger Pau Monné #include <machine/pc/bios.h>
62079f7ef8SRoger Pau Monné #include <machine/smp.h>
6344e06d15SRoger Pau Monné #include <machine/intr_machdep.h>
64*ca49b334SRoger Pau Monné #include <machine/metadata.h>
6597baeefdSRoger Pau Monné 
661a9cdd37SRoger Pau Monné #include <xen/xen-os.h>
671a9cdd37SRoger Pau Monné #include <xen/hypervisor.h>
68b7df74eeSWarner Losh #include <xen/xenstore/xenstorevar.h>
69842471b3SRoger Pau Monné #include <xen/xen_pv.h>
7044e06d15SRoger Pau Monné #include <xen/xen_msi.h>
711a9cdd37SRoger Pau Monné 
72079f7ef8SRoger Pau Monné #include <xen/interface/vcpu.h>
73079f7ef8SRoger Pau Monné 
745f05c794SRoger Pau Monné #include <dev/xen/timer/timer.h>
755f05c794SRoger Pau Monné 
76c98a2727SRoger Pau Monné #ifdef DDB
77c98a2727SRoger Pau Monné #include <ddb/ddb.h>
78c98a2727SRoger Pau Monné #endif
79c98a2727SRoger Pau Monné 
801a9cdd37SRoger Pau Monné /* Native initial function */
811a9cdd37SRoger Pau Monné extern u_int64_t hammer_time(u_int64_t, u_int64_t);
821a9cdd37SRoger Pau Monné /* Xen initial function */
831a9cdd37SRoger Pau Monné uint64_t hammer_time_xen(start_info_t *, uint64_t);
841a9cdd37SRoger Pau Monné 
851e69553eSRoger Pau Monné #define MAX_E820_ENTRIES	128
861e69553eSRoger Pau Monné 
8797baeefdSRoger Pau Monné /*--------------------------- Forward Declarations ---------------------------*/
8897baeefdSRoger Pau Monné static caddr_t xen_pv_parse_preload_data(u_int64_t);
891e69553eSRoger Pau Monné static void xen_pv_parse_memmap(caddr_t, vm_paddr_t *, int *);
9097baeefdSRoger Pau Monné 
91079f7ef8SRoger Pau Monné #ifdef SMP
92079f7ef8SRoger Pau Monné static int xen_pv_start_all_aps(void);
93079f7ef8SRoger Pau Monné #endif
94079f7ef8SRoger Pau Monné 
95079f7ef8SRoger Pau Monné /*---------------------------- Extern Declarations ---------------------------*/
96079f7ef8SRoger Pau Monné #ifdef SMP
97079f7ef8SRoger Pau Monné /* Variables used by amd64 mp_machdep to start APs */
98079f7ef8SRoger Pau Monné extern struct mtx ap_boot_mtx;
99079f7ef8SRoger Pau Monné extern void *bootstacks[];
100079f7ef8SRoger Pau Monné extern char *doublefault_stack;
101079f7ef8SRoger Pau Monné extern char *nmi_stack;
102079f7ef8SRoger Pau Monné extern void *dpcpu;
103079f7ef8SRoger Pau Monné extern int bootAP;
104079f7ef8SRoger Pau Monné extern char *bootSTK;
105079f7ef8SRoger Pau Monné #endif
106079f7ef8SRoger Pau Monné 
107c98a2727SRoger Pau Monné /*
108c98a2727SRoger Pau Monné  * Placed by the linker at the end of the bss section, which is the last
109c98a2727SRoger Pau Monné  * section loaded by Xen before loading the symtab and strtab.
110c98a2727SRoger Pau Monné  */
111c98a2727SRoger Pau Monné extern uint32_t end;
112c98a2727SRoger Pau Monné 
11397baeefdSRoger Pau Monné /*-------------------------------- Global Data -------------------------------*/
11497baeefdSRoger Pau Monné /* Xen init_ops implementation. */
11597baeefdSRoger Pau Monné struct init_ops xen_init_ops = {
11697baeefdSRoger Pau Monné 	.parse_preload_data		= xen_pv_parse_preload_data,
1175f05c794SRoger Pau Monné 	.early_clock_source_init	= xen_clock_init,
1185f05c794SRoger Pau Monné 	.early_delay			= xen_delay,
1191e69553eSRoger Pau Monné 	.parse_memmap			= xen_pv_parse_memmap,
120079f7ef8SRoger Pau Monné #ifdef SMP
121079f7ef8SRoger Pau Monné 	.start_all_aps			= xen_pv_start_all_aps,
122079f7ef8SRoger Pau Monné #endif
12344e06d15SRoger Pau Monné 	.msi_init =			xen_msi_init,
12497baeefdSRoger Pau Monné };
12597baeefdSRoger Pau Monné 
1261e69553eSRoger Pau Monné static struct bios_smap xen_smap[MAX_E820_ENTRIES];
1271e69553eSRoger Pau Monné 
12897baeefdSRoger Pau Monné /*-------------------------------- Xen PV init -------------------------------*/
1291a9cdd37SRoger Pau Monné /*
1301a9cdd37SRoger Pau Monné  * First function called by the Xen PVH boot sequence.
1311a9cdd37SRoger Pau Monné  *
1321a9cdd37SRoger Pau Monné  * Set some Xen global variables and prepare the environment so it is
1331a9cdd37SRoger Pau Monné  * as similar as possible to what native FreeBSD init function expects.
1341a9cdd37SRoger Pau Monné  */
1351a9cdd37SRoger Pau Monné uint64_t
1361a9cdd37SRoger Pau Monné hammer_time_xen(start_info_t *si, uint64_t xenstack)
1371a9cdd37SRoger Pau Monné {
1381a9cdd37SRoger Pau Monné 	uint64_t physfree;
1391a9cdd37SRoger Pau Monné 	uint64_t *PT4 = (u_int64_t *)xenstack;
1401a9cdd37SRoger Pau Monné 	uint64_t *PT3 = (u_int64_t *)(xenstack + PAGE_SIZE);
1411a9cdd37SRoger Pau Monné 	uint64_t *PT2 = (u_int64_t *)(xenstack + 2 * PAGE_SIZE);
1421a9cdd37SRoger Pau Monné 	int i;
1431a9cdd37SRoger Pau Monné 
1441a9cdd37SRoger Pau Monné 	xen_domain_type = XEN_PV_DOMAIN;
1451a9cdd37SRoger Pau Monné 	vm_guest = VM_GUEST_XEN;
1461a9cdd37SRoger Pau Monné 
1471a9cdd37SRoger Pau Monné 	if ((si == NULL) || (xenstack == 0)) {
148c203fa69SRoger Pau Monné 		xc_printf("ERROR: invalid start_info or xen stack, halting\n");
1491a9cdd37SRoger Pau Monné 		HYPERVISOR_shutdown(SHUTDOWN_crash);
1501a9cdd37SRoger Pau Monné 	}
1511a9cdd37SRoger Pau Monné 
152c203fa69SRoger Pau Monné 	xc_printf("FreeBSD PVH running on %s\n", si->magic);
153c203fa69SRoger Pau Monné 
1541a9cdd37SRoger Pau Monné 	/* We use 3 pages of xen stack for the boot pagetables */
1551a9cdd37SRoger Pau Monné 	physfree = xenstack + 3 * PAGE_SIZE - KERNBASE;
1561a9cdd37SRoger Pau Monné 
1571a9cdd37SRoger Pau Monné 	/* Setup Xen global variables */
1581a9cdd37SRoger Pau Monné 	HYPERVISOR_start_info = si;
1591a9cdd37SRoger Pau Monné 	HYPERVISOR_shared_info =
1601a9cdd37SRoger Pau Monné 	    (shared_info_t *)(si->shared_info + KERNBASE);
1611a9cdd37SRoger Pau Monné 
1621a9cdd37SRoger Pau Monné 	/*
1631a9cdd37SRoger Pau Monné 	 * Setup some misc global variables for Xen devices
1641a9cdd37SRoger Pau Monné 	 *
1651a9cdd37SRoger Pau Monné 	 * XXX: Devices that need these specific variables should
1661a9cdd37SRoger Pau Monné 	 *      be rewritten to fetch this info by themselves from the
1671a9cdd37SRoger Pau Monné 	 *      start_info page.
1681a9cdd37SRoger Pau Monné 	 */
1691a9cdd37SRoger Pau Monné 	xen_store = (struct xenstore_domain_interface *)
1701a9cdd37SRoger Pau Monné 	    (ptoa(si->store_mfn) + KERNBASE);
171c203fa69SRoger Pau Monné 	console_page = (char *)(ptoa(si->console.domU.mfn) + KERNBASE);
1721a9cdd37SRoger Pau Monné 
1731a9cdd37SRoger Pau Monné 	/*
1741a9cdd37SRoger Pau Monné 	 * Use the stack Xen gives us to build the page tables
1751a9cdd37SRoger Pau Monné 	 * as native FreeBSD expects to find them (created
1761a9cdd37SRoger Pau Monné 	 * by the boot trampoline).
1771a9cdd37SRoger Pau Monné 	 */
1781a9cdd37SRoger Pau Monné 	for (i = 0; i < (PAGE_SIZE / sizeof(uint64_t)); i++) {
1795f35f84fSRoger Pau Monné 		/*
1805f35f84fSRoger Pau Monné 		 * Each slot of the level 4 pages points
1815f35f84fSRoger Pau Monné 		 * to the same level 3 page
1825f35f84fSRoger Pau Monné 		 */
1831a9cdd37SRoger Pau Monné 		PT4[i] = ((uint64_t)&PT3[0]) - KERNBASE;
1841a9cdd37SRoger Pau Monné 		PT4[i] |= PG_V | PG_RW | PG_U;
1851a9cdd37SRoger Pau Monné 
1865f35f84fSRoger Pau Monné 		/*
1875f35f84fSRoger Pau Monné 		 * Each slot of the level 3 pages points
1885f35f84fSRoger Pau Monné 		 * to the same level 2 page
1895f35f84fSRoger Pau Monné 		 */
1901a9cdd37SRoger Pau Monné 		PT3[i] = ((uint64_t)&PT2[0]) - KERNBASE;
1911a9cdd37SRoger Pau Monné 		PT3[i] |= PG_V | PG_RW | PG_U;
1921a9cdd37SRoger Pau Monné 
1935f35f84fSRoger Pau Monné 		/*
1945f35f84fSRoger Pau Monné 		 * The level 2 page slots are mapped with
1955f35f84fSRoger Pau Monné 		 * 2MB pages for 1GB.
1965f35f84fSRoger Pau Monné 		 */
1971a9cdd37SRoger Pau Monné 		PT2[i] = i * (2 * 1024 * 1024);
1981a9cdd37SRoger Pau Monné 		PT2[i] |= PG_V | PG_RW | PG_PS | PG_U;
1991a9cdd37SRoger Pau Monné 	}
2001a9cdd37SRoger Pau Monné 	load_cr3(((uint64_t)&PT4[0]) - KERNBASE);
2011a9cdd37SRoger Pau Monné 
20297baeefdSRoger Pau Monné 	/* Set the hooks for early functions that diverge from bare metal */
20397baeefdSRoger Pau Monné 	init_ops = xen_init_ops;
204842471b3SRoger Pau Monné 	apic_ops = xen_apic_ops;
20597baeefdSRoger Pau Monné 
2061a9cdd37SRoger Pau Monné 	/* Now we can jump into the native init function */
2071a9cdd37SRoger Pau Monné 	return (hammer_time(0, physfree));
2081a9cdd37SRoger Pau Monné }
20997baeefdSRoger Pau Monné 
21097baeefdSRoger Pau Monné /*-------------------------------- PV specific -------------------------------*/
211079f7ef8SRoger Pau Monné #ifdef SMP
212079f7ef8SRoger Pau Monné static bool
213079f7ef8SRoger Pau Monné start_xen_ap(int cpu)
214079f7ef8SRoger Pau Monné {
215079f7ef8SRoger Pau Monné 	struct vcpu_guest_context *ctxt;
216079f7ef8SRoger Pau Monné 	int ms, cpus = mp_naps;
217079f7ef8SRoger Pau Monné 	const size_t stacksize = KSTACK_PAGES * PAGE_SIZE;
218079f7ef8SRoger Pau Monné 
219079f7ef8SRoger Pau Monné 	/* allocate and set up an idle stack data page */
220079f7ef8SRoger Pau Monné 	bootstacks[cpu] =
221079f7ef8SRoger Pau Monné 	    (void *)kmem_malloc(kernel_arena, stacksize, M_WAITOK | M_ZERO);
222079f7ef8SRoger Pau Monné 	doublefault_stack =
223079f7ef8SRoger Pau Monné 	    (char *)kmem_malloc(kernel_arena, PAGE_SIZE, M_WAITOK | M_ZERO);
224079f7ef8SRoger Pau Monné 	nmi_stack =
225079f7ef8SRoger Pau Monné 	    (char *)kmem_malloc(kernel_arena, PAGE_SIZE, M_WAITOK | M_ZERO);
226079f7ef8SRoger Pau Monné 	dpcpu =
227079f7ef8SRoger Pau Monné 	    (void *)kmem_malloc(kernel_arena, DPCPU_SIZE, M_WAITOK | M_ZERO);
228079f7ef8SRoger Pau Monné 
229079f7ef8SRoger Pau Monné 	bootSTK = (char *)bootstacks[cpu] + KSTACK_PAGES * PAGE_SIZE - 8;
230079f7ef8SRoger Pau Monné 	bootAP = cpu;
231079f7ef8SRoger Pau Monné 
232079f7ef8SRoger Pau Monné 	ctxt = malloc(sizeof(*ctxt), M_TEMP, M_WAITOK | M_ZERO);
233079f7ef8SRoger Pau Monné 	if (ctxt == NULL)
234079f7ef8SRoger Pau Monné 		panic("unable to allocate memory");
235079f7ef8SRoger Pau Monné 
236079f7ef8SRoger Pau Monné 	ctxt->flags = VGCF_IN_KERNEL;
237079f7ef8SRoger Pau Monné 	ctxt->user_regs.rip = (unsigned long) init_secondary;
238079f7ef8SRoger Pau Monné 	ctxt->user_regs.rsp = (unsigned long) bootSTK;
239079f7ef8SRoger Pau Monné 
240079f7ef8SRoger Pau Monné 	/* Set the AP to use the same page tables */
241079f7ef8SRoger Pau Monné 	ctxt->ctrlreg[3] = KPML4phys;
242079f7ef8SRoger Pau Monné 
243079f7ef8SRoger Pau Monné 	if (HYPERVISOR_vcpu_op(VCPUOP_initialise, cpu, ctxt))
244079f7ef8SRoger Pau Monné 		panic("unable to initialize AP#%d", cpu);
245079f7ef8SRoger Pau Monné 
246079f7ef8SRoger Pau Monné 	free(ctxt, M_TEMP);
247079f7ef8SRoger Pau Monné 
248079f7ef8SRoger Pau Monné 	/* Launch the vCPU */
249079f7ef8SRoger Pau Monné 	if (HYPERVISOR_vcpu_op(VCPUOP_up, cpu, NULL))
250079f7ef8SRoger Pau Monné 		panic("unable to start AP#%d", cpu);
251079f7ef8SRoger Pau Monné 
252079f7ef8SRoger Pau Monné 	/* Wait up to 5 seconds for it to start. */
253079f7ef8SRoger Pau Monné 	for (ms = 0; ms < 5000; ms++) {
254079f7ef8SRoger Pau Monné 		if (mp_naps > cpus)
255079f7ef8SRoger Pau Monné 			return (true);
256079f7ef8SRoger Pau Monné 		DELAY(1000);
257079f7ef8SRoger Pau Monné 	}
258079f7ef8SRoger Pau Monné 
259079f7ef8SRoger Pau Monné 	return (false);
260079f7ef8SRoger Pau Monné }
261079f7ef8SRoger Pau Monné 
262079f7ef8SRoger Pau Monné static int
263079f7ef8SRoger Pau Monné xen_pv_start_all_aps(void)
264079f7ef8SRoger Pau Monné {
265079f7ef8SRoger Pau Monné 	int cpu;
266079f7ef8SRoger Pau Monné 
267079f7ef8SRoger Pau Monné 	mtx_init(&ap_boot_mtx, "ap boot", NULL, MTX_SPIN);
268079f7ef8SRoger Pau Monné 
269079f7ef8SRoger Pau Monné 	for (cpu = 1; cpu < mp_ncpus; cpu++) {
270079f7ef8SRoger Pau Monné 
271079f7ef8SRoger Pau Monné 		/* attempt to start the Application Processor */
272079f7ef8SRoger Pau Monné 		if (!start_xen_ap(cpu))
273079f7ef8SRoger Pau Monné 			panic("AP #%d failed to start!", cpu);
274079f7ef8SRoger Pau Monné 
275079f7ef8SRoger Pau Monné 		CPU_SET(cpu, &all_cpus);	/* record AP in CPU map */
276079f7ef8SRoger Pau Monné 	}
277079f7ef8SRoger Pau Monné 
278079f7ef8SRoger Pau Monné 	return (mp_naps);
279079f7ef8SRoger Pau Monné }
280079f7ef8SRoger Pau Monné #endif /* SMP */
281079f7ef8SRoger Pau Monné 
28297baeefdSRoger Pau Monné /*
28397baeefdSRoger Pau Monné  * Functions to convert the "extra" parameters passed by Xen
28497baeefdSRoger Pau Monné  * into FreeBSD boot options.
28597baeefdSRoger Pau Monné  */
28697baeefdSRoger Pau Monné static void
28797baeefdSRoger Pau Monné xen_pv_set_env(void)
28897baeefdSRoger Pau Monné {
28997baeefdSRoger Pau Monné 	char *cmd_line_next, *cmd_line;
29097baeefdSRoger Pau Monné 	size_t env_size;
29197baeefdSRoger Pau Monné 
29297baeefdSRoger Pau Monné 	cmd_line = HYPERVISOR_start_info->cmd_line;
29397baeefdSRoger Pau Monné 	env_size = sizeof(HYPERVISOR_start_info->cmd_line);
29497baeefdSRoger Pau Monné 
29597baeefdSRoger Pau Monné 	/* Skip leading spaces */
29697baeefdSRoger Pau Monné 	for (; isspace(*cmd_line) && (env_size != 0); cmd_line++)
29797baeefdSRoger Pau Monné 		env_size--;
29897baeefdSRoger Pau Monné 
29997baeefdSRoger Pau Monné 	/* Replace ',' with '\0' */
30097baeefdSRoger Pau Monné 	for (cmd_line_next = cmd_line; strsep(&cmd_line_next, ",") != NULL;)
30197baeefdSRoger Pau Monné 		;
30297baeefdSRoger Pau Monné 
30397baeefdSRoger Pau Monné 	init_static_kenv(cmd_line, env_size);
30497baeefdSRoger Pau Monné }
30597baeefdSRoger Pau Monné 
30697baeefdSRoger Pau Monné static void
30797baeefdSRoger Pau Monné xen_pv_set_boothowto(void)
30897baeefdSRoger Pau Monné {
30997baeefdSRoger Pau Monné 	int i;
310b2537024SRoger Pau Monné 	char *env;
31197baeefdSRoger Pau Monné 
31297baeefdSRoger Pau Monné 	/* get equivalents from the environment */
31397baeefdSRoger Pau Monné 	for (i = 0; howto_names[i].ev != NULL; i++) {
314b2537024SRoger Pau Monné 		if ((env = kern_getenv(howto_names[i].ev)) != NULL) {
31597baeefdSRoger Pau Monné 			boothowto |= howto_names[i].mask;
316b2537024SRoger Pau Monné 			freeenv(env);
317b2537024SRoger Pau Monné 		}
31897baeefdSRoger Pau Monné 	}
31997baeefdSRoger Pau Monné }
32097baeefdSRoger Pau Monné 
321c98a2727SRoger Pau Monné #ifdef DDB
322c98a2727SRoger Pau Monné /*
323c98a2727SRoger Pau Monné  * The way Xen loads the symtab is different from the native boot loader,
324c98a2727SRoger Pau Monné  * because it's tailored for NetBSD. So we have to adapt and use the same
325c98a2727SRoger Pau Monné  * method as NetBSD. Portions of the code below have been picked from NetBSD:
326c98a2727SRoger Pau Monné  * sys/kern/kern_ksyms.c CVS Revision 1.71.
327c98a2727SRoger Pau Monné  */
328c98a2727SRoger Pau Monné static void
329c98a2727SRoger Pau Monné xen_pv_parse_symtab(void)
330c98a2727SRoger Pau Monné {
331c98a2727SRoger Pau Monné 	Elf_Ehdr *ehdr;
332c98a2727SRoger Pau Monné 	Elf_Shdr *shdr;
333c98a2727SRoger Pau Monné 	vm_offset_t sym_end;
334c98a2727SRoger Pau Monné 	uint32_t size;
335c98a2727SRoger Pau Monné 	int i, j;
336c98a2727SRoger Pau Monné 
337c98a2727SRoger Pau Monné 	size = end;
338c98a2727SRoger Pau Monné 	sym_end = HYPERVISOR_start_info->mod_start != 0 ?
339c98a2727SRoger Pau Monné 	    HYPERVISOR_start_info->mod_start :
340c98a2727SRoger Pau Monné 	    HYPERVISOR_start_info->mfn_list;
341c98a2727SRoger Pau Monné 
342c98a2727SRoger Pau Monné 	/*
343c98a2727SRoger Pau Monné 	 * Make sure the size is right headed, sym_end is just a
344c98a2727SRoger Pau Monné 	 * high boundary, but at least allows us to fail earlier.
345c98a2727SRoger Pau Monné 	 */
346c98a2727SRoger Pau Monné 	if ((vm_offset_t)&end + size > sym_end) {
347c98a2727SRoger Pau Monné 		xc_printf("Unable to load ELF symtab: size mismatch\n");
348c98a2727SRoger Pau Monné 		return;
349c98a2727SRoger Pau Monné 	}
350c98a2727SRoger Pau Monné 
351c98a2727SRoger Pau Monné 	ehdr = (Elf_Ehdr *)(&end + 1);
352c98a2727SRoger Pau Monné 	if (memcmp(ehdr->e_ident, ELFMAG, SELFMAG) ||
353c98a2727SRoger Pau Monné 	    ehdr->e_ident[EI_CLASS] != ELF_TARG_CLASS ||
354c98a2727SRoger Pau Monné 	    ehdr->e_version > 1) {
355c98a2727SRoger Pau Monné 		xc_printf("Unable to load ELF symtab: invalid symbol table\n");
356c98a2727SRoger Pau Monné 		return;
357c98a2727SRoger Pau Monné 	}
358c98a2727SRoger Pau Monné 
359c98a2727SRoger Pau Monné 	shdr = (Elf_Shdr *)((uint8_t *)ehdr + ehdr->e_shoff);
360c98a2727SRoger Pau Monné 	/* Find the symbol table and the corresponding string table. */
361c98a2727SRoger Pau Monné 	for (i = 1; i < ehdr->e_shnum; i++) {
362c98a2727SRoger Pau Monné 		if (shdr[i].sh_type != SHT_SYMTAB)
363c98a2727SRoger Pau Monné 			continue;
364c98a2727SRoger Pau Monné 		if (shdr[i].sh_offset == 0)
365c98a2727SRoger Pau Monné 			continue;
366c98a2727SRoger Pau Monné 		ksymtab = (uintptr_t)((uint8_t *)ehdr + shdr[i].sh_offset);
367c98a2727SRoger Pau Monné 		ksymtab_size = shdr[i].sh_size;
368c98a2727SRoger Pau Monné 		j = shdr[i].sh_link;
369c98a2727SRoger Pau Monné 		if (shdr[j].sh_offset == 0)
370c98a2727SRoger Pau Monné 			continue; /* Can this happen? */
371c98a2727SRoger Pau Monné 		kstrtab = (uintptr_t)((uint8_t *)ehdr + shdr[j].sh_offset);
372c98a2727SRoger Pau Monné 		break;
373c98a2727SRoger Pau Monné 	}
374c98a2727SRoger Pau Monné 
375c98a2727SRoger Pau Monné 	if (ksymtab == 0 || kstrtab == 0) {
376c98a2727SRoger Pau Monné 		xc_printf(
377c98a2727SRoger Pau Monné     "Unable to load ELF symtab: could not find symtab or strtab\n");
378c98a2727SRoger Pau Monné 		return;
379c98a2727SRoger Pau Monné 	}
380c98a2727SRoger Pau Monné }
381c98a2727SRoger Pau Monné #endif
382c98a2727SRoger Pau Monné 
38397baeefdSRoger Pau Monné static caddr_t
38497baeefdSRoger Pau Monné xen_pv_parse_preload_data(u_int64_t modulep)
38597baeefdSRoger Pau Monné {
386*ca49b334SRoger Pau Monné 	caddr_t		 kmdp;
387*ca49b334SRoger Pau Monné 	vm_ooffset_t	 off;
388*ca49b334SRoger Pau Monné 	vm_paddr_t	 metadata;
389*ca49b334SRoger Pau Monné 
390*ca49b334SRoger Pau Monné 	if (HYPERVISOR_start_info->mod_start != 0) {
391*ca49b334SRoger Pau Monné 		preload_metadata = (caddr_t)(HYPERVISOR_start_info->mod_start);
392*ca49b334SRoger Pau Monné 
393*ca49b334SRoger Pau Monné 		kmdp = preload_search_by_type("elf kernel");
394*ca49b334SRoger Pau Monné 		if (kmdp == NULL)
395*ca49b334SRoger Pau Monné 			kmdp = preload_search_by_type("elf64 kernel");
396*ca49b334SRoger Pau Monné 		KASSERT(kmdp != NULL, ("unable to find kernel"));
397*ca49b334SRoger Pau Monné 
398*ca49b334SRoger Pau Monné 		/*
399*ca49b334SRoger Pau Monné 		 * Xen has relocated the metadata and the modules,
400*ca49b334SRoger Pau Monné 		 * so we need to recalculate it's position. This is
401*ca49b334SRoger Pau Monné 		 * done by saving the original modulep address and
402*ca49b334SRoger Pau Monné 		 * then calculating the offset with mod_start,
403*ca49b334SRoger Pau Monné 		 * which contains the relocated modulep address.
404*ca49b334SRoger Pau Monné 		 */
405*ca49b334SRoger Pau Monné 		metadata = MD_FETCH(kmdp, MODINFOMD_MODULEP, int);
406*ca49b334SRoger Pau Monné 		off = HYPERVISOR_start_info->mod_start - metadata;
407*ca49b334SRoger Pau Monné 
408*ca49b334SRoger Pau Monné 		preload_bootstrap_relocate(off);
409*ca49b334SRoger Pau Monné 
410*ca49b334SRoger Pau Monné 		boothowto = MD_FETCH(kmdp, MODINFOMD_HOWTO, int);
411*ca49b334SRoger Pau Monné 		kern_envp = MD_FETCH(kmdp, MODINFOMD_ENVP, char *);
412*ca49b334SRoger Pau Monné 		kern_envp += off;
413*ca49b334SRoger Pau Monné 	} else {
41497baeefdSRoger Pau Monné 		/* Parse the extra boot information given by Xen */
41597baeefdSRoger Pau Monné 		xen_pv_set_env();
41697baeefdSRoger Pau Monné 		xen_pv_set_boothowto();
417*ca49b334SRoger Pau Monné 		kmdp = NULL;
418*ca49b334SRoger Pau Monné 	}
41997baeefdSRoger Pau Monné 
420c98a2727SRoger Pau Monné #ifdef DDB
421c98a2727SRoger Pau Monné 	xen_pv_parse_symtab();
422c98a2727SRoger Pau Monné #endif
423*ca49b334SRoger Pau Monné 	return (kmdp);
42497baeefdSRoger Pau Monné }
4251e69553eSRoger Pau Monné 
4261e69553eSRoger Pau Monné static void
4271e69553eSRoger Pau Monné xen_pv_parse_memmap(caddr_t kmdp, vm_paddr_t *physmap, int *physmap_idx)
4281e69553eSRoger Pau Monné {
4291e69553eSRoger Pau Monné 	struct xen_memory_map memmap;
4301e69553eSRoger Pau Monné 	u_int32_t size;
4311e69553eSRoger Pau Monné 	int rc;
4321e69553eSRoger Pau Monné 
4331e69553eSRoger Pau Monné 	/* Fetch the E820 map from Xen */
4341e69553eSRoger Pau Monné 	memmap.nr_entries = MAX_E820_ENTRIES;
4351e69553eSRoger Pau Monné 	set_xen_guest_handle(memmap.buffer, xen_smap);
4361e69553eSRoger Pau Monné 	rc = HYPERVISOR_memory_op(XENMEM_memory_map, &memmap);
4371e69553eSRoger Pau Monné 	if (rc)
4381e69553eSRoger Pau Monné 		panic("unable to fetch Xen E820 memory map");
4391e69553eSRoger Pau Monné 	size = memmap.nr_entries * sizeof(xen_smap[0]);
4401e69553eSRoger Pau Monné 
4411e69553eSRoger Pau Monné 	bios_add_smap_entries(xen_smap, size, physmap, physmap_idx);
4421e69553eSRoger Pau Monné }
443